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    • 3. 发明申请
    • ADIABATIC COMPRESSED AIR ENERGY STORAGE SYSTEM WITH COMBUSTOR
    • 具有搅拌机的ADIABATIC压缩空气能量储存系统
    • WO2011053410A1
    • 2011-05-05
    • PCT/US2010/049038
    • 2010-09-16
    • GENERAL ELECTRIC COMPANYFREUND, Sebastian, W.FINKENRATH, Matthias
    • FREUND, Sebastian, W.FINKENRATH, Matthias
    • F02C6/14F02C6/16F02C9/50
    • F02C6/16F02C6/14F02C9/50F05D2260/20Y02E60/15
    • A system includes a drive shaft (106), a motor-generator (108) coupled to the drive shaft, a compressor (102) coupled to the drive shaft and configured to output compressed air to a cavern, and a turbine (104) coupled to the drive shaft and configured to receive air from the cavern. The system includes a first thermal energy storage (TES) device, a combustor (124) configured to combust a flammable substance and generate an exhaust stream to the turbine, and controller (130). The controller is configured to control flow of the air to heat the air as it passes through the first TES (112), cause the flammable substance to flow to the combustor, operate the combustor to combust the air with the flammable substance to generate an exhaust stream into the turbine (104), and control the motor-generator (108) to generate electrical energy from energy imparted thereto from the turbine via the drive shaft.
    • 一种系统包括驱动轴(106),联接到驱动轴的电动发电机(108),联接到驱动轴并构造成将压缩空气输送到洞穴的压缩机(102) 到驱动轴并被配置为从洞穴接收空气。 该系统包括第一热能存储(TES)装置,燃烧器(124),其构造成燃烧易燃物质并产生到涡轮机的排气流,以及控制器(130)。 控制器构造成控制空气的流动,以便在空气通过第一TES(112)时加热空气,使得可燃物质流到燃烧器,操作燃烧器以使空气与易燃物质一起燃烧以产生排气 流入涡轮机(104),并且通过驱动轴控制电动发电机(108)从能量通过涡轮产生的能量产生电能。
    • 9. 发明申请
    • HYBRID CARBON DIOXIDE SEPARATION PROCESS AND SYSTEM
    • 混合二氧化碳分离工艺及系统
    • WO2010088054A2
    • 2010-08-05
    • PCT/US2010/020995
    • 2010-01-14
    • GENERAL ELECTRIC COMPANYFINKENRATH, Matthias
    • FINKENRATH, Matthias
    • B01D53/22B01D61/00B01D53/62
    • B01D53/229B01D53/62B01D2257/504Y02A50/2342Y02C10/04Y02C10/10
    • The present application relates to separation processes and systems and more specifically to hybrid carbon dioxide separation processes. In one embodiment, the system for the separation or removal of carbon dioxide comprises an apparatus (11) for a selective separation of carbon dioxide (CO 2 ) from flue gas - typically exhaust gases, syngas or natural gas streams - using one or more so-called CO 2 reverse selective membrane(s) in the first separation unit (11) to enrich a feed gas stream (10) which contains carbon dioxide with CO 2 , and by separating other constituents of the gas stream. Thus, the feed gas stream is separated in the first separation unit by CO 2 -reverse-selective separation into a CO 2 -lean gas stream (12) and a CO 2 -enriched gas stream (13). The CO 2 -enriched gas stream (13) is fed to a second separation unit which is a CO 2 -selective separation unit (14). The second separation results in a purified CO 2 -rich gas stream (15) and a remaining CO 2 -lean gas stream (16).
    • 本申请涉及分离过程和系统,并且更具体地涉及混合二氧化碳分离过程。 在一个实施方案中,用于分离或除去二氧化碳的系统包括用于从烟气中选择性分离二氧化碳(CO 2)的设备(11),所述设备通常是废气,合成气或天然气 - 在第一分离单元(11)中使用一种或多种所谓的CO 2反向选择性膜来富集含CO 2和CO 2的进料气流(10) 2,并通过分离气流的其他成分。 因此,原料气流在第一分离单元中通过CO 2 - 反选择分离而分离成CO 2气体流(12)和CO 2气体流 (2) - 富含气体的物流(13)。 富CO 2气体物流(13)被供给到CO 2选择性分离单元(14)的第二分离单元。 第二次分离产生纯化的富含CO 2的气流(15)和剩余的CO 2/2气流(16)。